Surface morphology has been demonstrated to influence the tribological properties at different scales, but the phenomena which occur at the nano-scale have not been completely understood. The present study reports on the effect of Focused Ion Beam nano-patterning on coefficient of friction (CoF) and adhesion of Si(001) surface covered by native oxide. Regular arrays of nano-grooves reduce both CoF and adhesion, related to a hydrophobic character of the patterned surface, but this effect disappears as soon as the separation among the nano-structures approaches the microscopic scale. The dependence of this hydrophobic effect on the pitch is not linked to the corresponding contact area. It has been found that each nano-structure is surrounded ...
The influence of nanoscale topography and chemical composition on microfriction has been studied at ...
International audienceThe present study deals with the creation of nano-rough surfaces with stable a...
This work aims to elucidate the role of water on the tribological behavior of silicon-based surfaces...
Surface morphology has been demonstrated to influence the tribological properties at different scale...
Surface morphology has been demonstrated to influence the tribological properties at different scale...
Adhesion and friction force between flat Si tip and nano-patterned Si surface have been investigated...
The tribological properties of a nano-patterned Si surface have been investigated in ambient conditi...
The interpretation of tribological processes is presently very different for nano-scale and micro-sc...
Although the importance of morphology on the tribological properties of surfaces has long been prove...
Micro or nano-friction is closely related with surface morphologies. In this paper, different surfac...
The present study deals with the creation of nano-rough surfaces with stable and controlled high hyd...
A large number of silicon (Si) patterns consisting of nanopillars of varying diameter and pitch have...
The problems caused by the adhesive force and friction force become more critical when the size of M...
Nanopatterning silicon surfaces in terms of both topography and chemistry has been shown to influenc...
Atomic force microscopy (AFM) has been used for tribological studies of silicon surfaces both with a...
The influence of nanoscale topography and chemical composition on microfriction has been studied at ...
International audienceThe present study deals with the creation of nano-rough surfaces with stable a...
This work aims to elucidate the role of water on the tribological behavior of silicon-based surfaces...
Surface morphology has been demonstrated to influence the tribological properties at different scale...
Surface morphology has been demonstrated to influence the tribological properties at different scale...
Adhesion and friction force between flat Si tip and nano-patterned Si surface have been investigated...
The tribological properties of a nano-patterned Si surface have been investigated in ambient conditi...
The interpretation of tribological processes is presently very different for nano-scale and micro-sc...
Although the importance of morphology on the tribological properties of surfaces has long been prove...
Micro or nano-friction is closely related with surface morphologies. In this paper, different surfac...
The present study deals with the creation of nano-rough surfaces with stable and controlled high hyd...
A large number of silicon (Si) patterns consisting of nanopillars of varying diameter and pitch have...
The problems caused by the adhesive force and friction force become more critical when the size of M...
Nanopatterning silicon surfaces in terms of both topography and chemistry has been shown to influenc...
Atomic force microscopy (AFM) has been used for tribological studies of silicon surfaces both with a...
The influence of nanoscale topography and chemical composition on microfriction has been studied at ...
International audienceThe present study deals with the creation of nano-rough surfaces with stable a...
This work aims to elucidate the role of water on the tribological behavior of silicon-based surfaces...